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Homepage>BS EN ISO 5659-2:2017 Plastics. Smoke generation Determination of optical density by a single-chamber test
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sklademVydáno: 2017-07-21
BS EN ISO 5659-2:2017 Plastics. Smoke generation Determination of optical density by a single-chamber test

BS EN ISO 5659-2:2017

Plastics. Smoke generation Determination of optical density by a single-chamber test

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Označení normy:BS EN ISO 5659-2:2017
Počet stran:60
Vydáno:2017-07-21
ISBN:978 0 580 90187 4
Status:Standard
DESCRIPTION

BS EN ISO 5659-2:2017


This standard BS EN ISO 5659-2:2017 Plastics. Smoke generation is classified in these ICS categories:
  • 83.080.01 Plastics in general
  • 13.220.40 Ignitability and burning behaviour of materials and products

This document specifies a method of measuring smoke production from the exposed surface of specimens of materials or composites. It is applicable to specimens that have an essentially flat surface and do not exceed 25 mm in thickness when placed in a horizontal orientation and subjected to specified levels of thermal irradiance in a closed cabinet with or without the application of a pilot flame. This method of test is applicable to all plastics.

It is intended that the values of optical density determined by this test be taken as specific to the specimen or assembly material in the form and thickness tested and are not to be considered inherent, fundamental properties.

The test is intended primarily for use in research and development and fire safety engineering in buildings, trains, ships, etc. and not as a basis for ratings for building codes or other purposes. No basis is provided for predicting the density of smoke that can be generated by the materials upon exposure to heat and flame under other (actual) exposure conditions. This test procedure excludes the effect of irritants on the eye.

NOTE This test procedure addresses the loss of visibility due to smoke density, which generally is not related to irritancy potency (see Annex E).

It is emphasized that smoke production from a material varies according to the irradiance level to which the specimen is exposed. The results yielded from the method specified in this document are based on exposure to the specific irradiance levels of 25 kW/m2 and 50 kW/m2.